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Potential Function Based Fully Distributed Finite-Time Event-Triggered Consensus for Multi-Agent Systems over Directed Graphs

机译:基于潜在功能的基于定向图中的多种子体系统的完全分布式有限时间事件触发的共识

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This paper proposes a novel approach for distributed finite-time event-triggered consensus control of multi-agent systems over directed graphs. In the proposed approach, a potential function is introduced in the control protocol design and a dynamic external variable with a finite-time convergence rate is involved in the construction of triggering thresholds. By using the proposed approach, finite-time consensus can be achieved in a fully distributed manner and the Zeno behavior is ruled out in the framework of finite-time event-triggered consensus. The proposed approach does not need global information and only a directed spanning tree is required for the underlying communication graph. Additionally, the requirement on continuous communication for controller updates or triggering detection is removed. Finally, an example is given to show the feasibility of the proposed approach.
机译:本文提出了一种新的分布式有限时间事件触发的多算法系统与定向图中的多算子系统的方法。在所提出的方法中,在控制协议设计中引入了潜在功能,并且在触发阈值的构造中涉及具有有限时间收敛速率的动态外部变量。通过使用所提出的方法,可以以完全分布的方式实现有限时间的共识,并且在有限时间事件触发共识的框架中排除了ZENO行为。所提出的方法不需要全局信息,并且只需要底层通信图所需的一棵定向生成树。此外,还删除了对控制器更新或触发检测的连续通信的要求。最后,给出了一个例子来展示所提出的方法的可行性。

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